首页> 外文期刊>World Journal of Mechanics >Effects of Viscous Dissipation on Unsteady MHD Thermo Bioconvection Boundary Layer Flow of a Nanofluid Containing Gyrotactic Microorganisms along a Stretching Sheet
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Effects of Viscous Dissipation on Unsteady MHD Thermo Bioconvection Boundary Layer Flow of a Nanofluid Containing Gyrotactic Microorganisms along a Stretching Sheet

机译:粘性耗散对沿拉伸片的含节育微生物的纳米流体非稳态MHD热生物对流边界层流动的影响

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This paper presents a numerical study of the problem of unsteady thermo bioconvection boundary layer flow of a nanofluid containing gyrotactic microorganisms along a stretching sheet under the influence of magnetic field and viscous dissipation. With the help of usual transformation, the governing equations are transformed into unsteady nonlinear coupled partial differential equations. The numerical solution is obtained by using an explicit finite difference scheme. The model used for the nanofluid incorporates the effects of Brownian motion and thermophoresis. From the results it is found that both magnetic parameter and bioconvection Rayleigh number have positive effect on the dimensionless Nusselt number and density number of the motile microorgan-isms while the opposite behavior became clear in the case of Grashof number and Eckert number. The rescaled velocity, temperature, concentration and the density of motile microorganisms depend strongly on the governing parameters.
机译:本文提供了一个数值研究的问题,即在磁场和粘性耗散的影响下,含旋流微生物的纳米流体沿拉伸片的非稳态热生物对流边界层流动的问题。在通常的变换的帮助下,控制方程被转换为非定常的非线性耦合偏微分方程。通过使用显式有限差分方案获得数值解。用于纳米流体的模型结合了布朗运动和热泳的影响。从结果发现,磁参数和生物对流瑞利数均对运动微生物的无量纲努塞尔数和密度数产生积极影响,而在格拉斯霍夫数和埃克特数的情况下相反的行为变得明显。运动微生物重新定标的速度,温度,浓度和密度在很大程度上取决于控制参数。

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